0000000000414648

AUTHOR

P. Thoele

showing 6 related works from this author

Collective 2$^{+1}$ excitations in$^{206}$Po and$^{208,210}$Rn

2016

In the present study, $B(E2; 2^{+}_{1}\rightarrow 0^{+}_{1})$ values have been measured in the 208,210Rn and 206Po nuclei through Coulomb excitation of re-accelerated radioactive beams in inverse kinematics at CERN-ISOLDE. These nuclei have been proposed to lie in, or at the boundary of the region where the seniority scheme should persist. However, contributions from collective excitations are likely to be present when moving away from the N=126 closed shell. Such an effect is confirmed by the observed increased collectivity of the $2^{+}_{1}\rightarrow 0^{+}_{1}$ transitions. Experimental results have been interpreted with the aid of theoretical studies carried out within the BCS-based QRP…

PhysicsNuclear reactionNuclear and High Energy Physics010308 nuclear & particles physicsHadronNuclear TheoryradonCoulomb excitation[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesIsotopes of palladiumcollective excitationExcited state0103 physical sciencesQuasiparticlePhysics::Accelerator PhysicsAtomic physics010306 general physicsNuclear ExperimentOpen shellpoloniumExcitationexcited states
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Coulomb excitation of re-accelerated 208Rn and 206Po beams

2013

In the present study, B( E2; 2(+)-> 0(+) ) values have been measured in the Rn-208 and Po-206 nuclei through Coulomb excitation of re-accelerated radioactive beams in inverse kinematics at CERN-ISOLDE. The resulting B(E2; 2(+)-> 0(+)) in 208Rn is similar to 0.08 e(2)b(2). These nuclei lie in, or at the boundary of the region where seniority scheme should persist. However, contributions from collective excitations may be present when moving away from the N = 126 shell closure. To date, surprisingly little is known of the transition probabilities between the low-spin states in this region.

PhysicsAngular momentumta114Isotope010308 nuclear & particles physicsPhysicsQC1-999Shell (structure)Boundary (topology)Coulomb excitation114 Physical sciences01 natural sciencesExperimental Nuclear PhysicsPhysics and AstronomySTATES0103 physical sciencesQuasiparticleApplied mathematicsPhysics::Accelerator PhysicsAtomic physics010306 general physicsSpin (physics)Nuclear ExperimentExcitation
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Lifetime measurement of neutron-rich even-even molybdenum isotopes

2017

D. Ralet et al. -- 11 pags., 10 figs., 3 tabs.

chemistry.chemical_element[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]7. Clean energy01 natural sciencesNuclear physicsSubatomic Physics0103 physical sciencesNeutronddc:530010306 general physicsMass numberPhysicsIsotope010308 nuclear & particles physicsrelativistic projectile fragmentation3. Good healthsecondary fragmentationgamma-ray spectroscopychemistryMolybdenumExcited stateQuadrupoleFísica nuclearAGATAAtomic physicsEnergy (signal processing)
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Determination of the B(E3, 0+ → 3−)-excitation strength in octupole-correlated nuclei near A ≈224 by the means of Coulomb excitation at REX-ISOLDE

2013

The IS475 collaboration conducted Coulomb-excitation experiments with postaccelerated radioactive 220Rn and 224Ra beams at the REX-ISOLDE facility. The beam particles (Ebeam ≈ 2.83 MeV/u) were Coulomb excited using 60Ni, 114Cd, and 120Sn scattering targets. De-excitation γ-rays were detected employing the Miniball array and scattered particles were detected in a silicon detector. Exploiting the Coulomb-excitation code GOSIA for each nucleus several matrix elements could be obtained from the measured γ-ray yields. The extracted 3−||Ê3||0+ matrix element allows for the conclusion that, while 220Rn represents an octupole vibrational system, 224Ra has already substantial octupole correlations i…

PhysicsHistoryScatteringCoulomb excitationPhysics and Astronomy(all)[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Charged particleParticle detectorComputer Science ApplicationsEducationNuclear physics25.70.De; 27.90.+b; 23.20.Js/dk/atira/pure/subjectarea/asjc/3100Excited stateCoulombPhysics::Accelerator PhysicsAtomic physicsGround stateExcitationComputingMilieux_MISCELLANEOUS
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Studies of pear-shaped nuclei using accelerated radioactive beams

2013

There is strong circumstantial evidence that certain heavy, unstable atomic nuclei are ‘octupole deformed’, that is, distorted into a pear shape. This contrasts with the more prevalent rugby-ball shape of nuclei with reflection-symmetric, quadrupole deformations. The elusive octupole deformed nuclei are of importance for nuclear structure theory, and also in searches for physics beyond the standard model; any measurable electric-dipole moment (a signature of the latter) is expected to be amplified in such nuclei. Here we determine electric octupole transition strengths (a direct measure of octupole correlations) for short-lived isotopes of radon and radium. Coulomb excitation experiments we…

PhysicsMultidisciplinaryIsotopeta114010308 nuclear & particles physicsNuclear TheoryNuclear structureCoulomb excitation[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesNuclear physics0103 physical sciencesAtomic nucleusQuadrupolePhysics::Accelerator PhysicsNeutronNuclidePhysics::Atomic PhysicsAtomic physics010306 general physicsNucleonNuclear Experiment
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Do nuclei go pear-shaped? Coulomb excitation of 220Rn and 224Ra at REX-ISOLDE (CERN)

2014

Artículo escrito por muchos autores, sólo se referencian el primero, los autores que firman como Universidad Autónoma de Madrid y el grupo de colaboración en el caso de que aparezca en el artículo

Materials scienceta114PhysicsQC1-999Coulomb excitationREX-ISOLDEFísicaradon[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]7. Clean energyNucleiradiumNuclear magnetic resonancePhysics::Accelerator PhysicsGamma spectroscopypear-shaped nuclei
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